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Methodology for analyzing ranges of uncertain model parameters and their impact on total maximum daily load process

机译:分析不确定模型参数范围及其对总最大日负荷过程的影响的方法

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摘要

A methodology for analyzing uncertain parameter ranges prior to model calibration or uncertainty analysis is presented. The method considers parameters that exist in complex models and are typically difficult to set using site-specific data (i.e., parameters that have suggested ranges, national average ranges, or ranges set with land characteristic data). The method applies Monte Carlo runs and an interval-spaced sensitivity analysis to determine the parts of parameter ranges that will most likely cause unrealistic model results. An application of the method is presented using the Soil and Water Assessment Tool model as applied to the Cannonsville Reservoir system watershed for hydrology and sediment simulations. Results indicate that after parameter range reduction, the model output range was reduced by an order of magnitude, thereby reducing the uncertainty of the model and aiding the calibration effort. Sediment transport is difficult to monitor and model in its many stages of transport so significant uncertainty in the sediment erosion and transport parameters for this model still exist. This uncertainty will impact the application of the model for Total Maximum Daily Load development and management decisions.
机译:提出了一种在模型校准或不确定性分析之前分析不确定性参数范围的方法。该方法考虑了存在于复杂模型中的参数,这些参数通常难以使​​用特定地点的数据进行设置(即具有建议范围,全国平均范围或使用土地特征数据设置的范围的参数)。该方法应用蒙特卡洛(Monte Carlo)运行和间隔灵敏度分析来确定最有可能导致不真实的模型结果的参数范围部分。提出了使用土壤和水评估工具模型的方法的应用,该模型已应用于Cannonsville水库系统分水岭,用于水文和沉积物模拟。结果表明,在减小参数范围之后,模型输出范围减小了一个数量级,从而减少了模型的不确定性并有助于校准工作。泥沙运移的许多阶段都难以监测和建模,因此该模型的泥沙侵蚀和运移参数仍然存在很大的不确定性。这种不确定性将影响用于总最大日负荷开发和管理决策的模型的应用。

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